Functional Characterization of Transforming Growth Factor-β Signaling in Dasatinib Resistance and Pre-BCR+ Acute

Gila Mostufi-Zadeh-Haghighi1, Pia Veratti1,2,3, Kyra Zodel1

  • 1Department of Medicine I, Medical Center-University of Freiburg, Faculty of Medicine, University of Freiburg, 79106 Freiburg, Germany.

Cancers
|September 9, 2023
PubMed

Insights

Dasatinib resistance in acute lymphoblastic leukemia (ALL) involves an upregulated TGFβ pathway. This pathway, including SMAD3, affects cell growth and apoptosis, offering insights into drug resistance mechanisms.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cell Signaling

Background:

  • Dasatinib is effective against pre-B-cell receptor (pre-BCR)-positive acute lymphoblastic leukemia (ALL) with E2A-PBX1 fusion.
  • The TGFβ signaling pathway has complex roles in cancer, influencing both tumor suppression and progression.

Purpose of the Study:

  • To investigate the role of the TGFβ signaling pathway in dasatinib resistance in pre-BCR+/E2A-PBX1+ ALL.
  • To identify specific molecular changes associated with acquired resistance to dasatinib.

Main Methods:

  • Global transcriptomic analysis of dasatinib-resistant pre-BCR+/E2A-PBX1+ ALL cells.
  • Confirmation of SMAD3 upregulation at transcriptional and translational levels.
  • Assessment of dasatinib's effect on TGFβ-induced SMAD3 phosphorylation.

Main Results:

  • Upregulation of the TGFβ signaling pathway and SMAD3 was identified in dasatinib-resistant ALL cells.
  • Dasatinib partially inhibits TGFβ-induced SMAD3 phosphorylation in ALL cell lines.
  • TGFβ1 activation in pre-BCR+/E2A-PBX1+ ALL cells induced cell cycle arrest, apoptosis, and c-MYC downregulation.

Conclusions:

  • The TGFβ signaling pathway plays a significant role in the leukemogenesis of B-cell precursor ALL.
  • Upregulation of the TGFβ pathway, particularly SMAD3, contributes to secondary drug resistance to dasatinib.

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